ReviewBiophysical reviews2024
Structural dynamics in chromatin unraveling by pioneer transcription factors.
Review in Biophysical reviews, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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Who cites it
9 citing papers in PubMed.
- H2A.Z facilitates Sox2-nucleosome interaction by promoting DNA and histone H3 tail mobility.Nucleic acids research · 2026Article
- Revealing site-specific molecular features mediating contacts of heterochromatin protein 1 α (HP1α) and the interactions with chromatin and DNA in LLPS environments.Communications biology · 2025Article
- Solution structure of the Sox2 DNA-binding domain reveals conformational selection in DNA binding.Nucleic acids research · 2025Article
- Article
- Structural insights into the recognition of native nucleosomes by pioneer transcription factors.Current opinion in structural biology · 2025Review
- TOX, through a glass, darkly.Frontiers in immunology · 2025Review
- Structural and dynamic studies of chromatin by solid-state NMR spectroscopy.Current opinion in structural biology · 2024Review
- DNA-binding proteins from MBD through ZF to BEN: recognition of cytosine methylation status by one arginine with two conformations.Nucleic acids research · 2024Article
- Special issue: Multiscale simulations of DNA from electrons to nucleosomes.Biophysical reviews · 2024Article
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Authors and funding
7 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Pioneer transcription factors are proteins with a dual function. First, they regulate transcription by binding to nucleosome-free DNA regulatory elements. Second, they bind to DNA while wrapped around histone proteins in the chromatin and mediate chromatin opening. The molecular mechanisms that connect the two functions are yet to be discovered. In recent years, pioneer factors received increased attention mainly because of their crucial role in promoting cell fate transitions that could be used for regenerative therapies. For example, the three factors required to induce pluripotency in somatic cells, Oct4, Sox2, and Klf4 were classified as pioneer factors and studied extensively. With this increased attention, several structures of complexes between pioneer factors and chromatin structural units (nucleosomes) have been resolved experimentally. Furthermore, experimental and computational approaches have been designed to study two unresolved, key scientific questions: First, do pioneer factors induce directly local opening of nucleosomes and chromatin fibers upon binding? And second, how do the unstructured tails of the histones impact the structural dynamics involved in such conformational transitions? Here we review the current knowledge about transcription factor-induced nucleosome dynamics and the role of the histone tails in this process. We discuss what is needed to bridge the gap between the static views obtained from the experimental structures and the key structural dynamic events in chromatin opening. Finally, we propose that integrating nuclear magnetic resonance spectroscopy with molecular dynamics simulations is a powerful approach to studying pioneer factor-mediated dynamics of nucleosomes and perhaps small chromatin fibers using native DNA sequences.
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